DocumentCode :
850640
Title :
Two-Dimensional Multivariate Parametric Models for Radar Applications—Part I: Maximum-Entropy Extensions for Toeplitz-Block Matrices
Author :
Abramovich, Yuri I. ; Johnson, Ben A. ; Spencer, Nicholas K.
Author_Institution :
Intell., Surveillance & Reconnaissance Div., Defence Sci. & Technol. Organ. (DSTO), Adelaide, SA
Volume :
56
Issue :
11
fYear :
2008
Firstpage :
5509
Lastpage :
5526
Abstract :
In a series of two papers, a new class of parametric models for two-dimensional multivariate (matrix-valued, space-time) adaptive processing is introduced. This class is based on the maximum-entropy extension and/or completion of partially specified matrix-valued Hermitian covariance matrices in both the space and time dimensions. This first paper considers the more restricted class of Toeplitz Hermitian covariance matrices that model stationary clutter. If the clutter is stationary only in time then we deal with a Toeplitz-block matrix, whereas clutter that is stationary in time and space is described by a Toeplitz-block-Toeplitz matrix. We first derive exact expressions for this new class of 2-D models that act as approximations for the unknown true covariance matrix. Second, we propose suboptimal (but computationally simpler) relaxed 2-D time-varying autoregressive models (ldquorelaxationsrdquo) that directly use the non-Toeplitz Hermitian sample covariance matrix. The high efficiency of these parametric models is illustrated by simulation results using true ground-clutter covariance matrices provided by the DARPA KASSPER Dataset 1, which is a trusted phenomenological airborne radar model, and a complementary AFRL dataset.
Keywords :
Hermitian matrices; Toeplitz matrices; airborne radar; autoregressive processes; covariance matrices; maximum entropy methods; radar clutter; radar signal processing; radar theory; space-time adaptive processing; 2-D time-varying autoregressive models; 2D multivariate parametric models; AFRL; DARPA KASSPER Dataset 1; Hermitian covariance matrices; STAP radar; Toeplitz-block matrices; Toeplitz-block-Toeplitz matrix; airborne radar model; maximum-entropy extension; multivariate adaptive processing; space-time adaptive processing; stationary clutter; Adaptive processing; Time-varying; adaptive processing; autoregressive; stationary interference; time-varying;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2008.929868
Filename :
4610268
Link To Document :
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